Exoplanet Mineralogy

Keith D. Putirka
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Abstract

Mineral properties hold dominion over planetary behavior as their physical and thermal properties control mantle circulation, plate tectonics, melting behavior, and crustal deformation, as well as global water and CO2 cycles. Estimating exoplanet mineralogy is thus of paramount importance for understanding planetary origins and evolution. Preliminary studies of exoplanets emphasize individual element abundances (e.g., Ca or K contents) or ratios (Mg/Si or Si/Fe), which are a valuable first step. But inter-planetary differences in, say, Si or Mg, are only relevant insofar they define a planet’s mineralogy.As will be shown, nothing definitive can yet be said about exoplanet mineralogy,...
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系外行星矿物学
矿物的物理和热特性控制着地幔环流、板块构造、熔化行为和地壳变形,以及全球水循环和二氧化碳循环,因此矿物特性对行星行为具有支配作用。因此,估算系外行星矿物学对了解行星起源和演化至关重要。系外行星的初步研究强调单个元素丰度(如钙或钾含量)或比率(镁/硅或硅/铁),这是宝贵的第一步。但行星间在硅或镁等元素上的差异只有在确定了行星的矿物学特征后才有意义。
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